Ben Wang
Shenyang Aerospace University
27 Papers
21 Citations
Ben Wang is an academic researcher from Shenyang Aerospace University. The author has contributed to research in topics: Machining & Surface roughness. The author has an hindex of 5, co-authored 20 publications.
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Papers
A predictive model of milling surface roughness
TL;DR: In this article, a milling surface roughness prediction model was proposed that considers the geometric and mechanical factors that influence surface roughs, such as elastic plastic deformation, microhardness, cutting force, and material properties.
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Effect of a Ti Alloy Layer on CFRP Hole Quality During Helical Milling of CFRP/Ti Laminate
TL;DR: In this article, the effect of Ti on hole quality in CFRP during the helical milling of a CFRP/Ti laminate was investigated with and without the presence of a Ti base layer.
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Experimental studies on helical milling process to improve hole quality for the Superalloy (MSRR7197)
TL;DR: In this article, different hole-making processes like conventional drilling and helical milling were conducted on the superalloy (MSRR7197) and the influence of both hole making processes on the processing quality of the MSRR 7197 were investigated.
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Fundamental functions of physical and chemical principles in the polishing of titanium alloys: mechanisms and problems
TL;DR: A comprehensive review of the polishing of titanium alloys can be found in this article, where four types of polishing techniques (i.e., mechanical, high-energy beam polishing, chemical, and compound polishing) are compared from the view of model, optimization, equipment, efficiency, surface quality, and cost.
20
Weakening of the anisotropy of surface roughness in ultra-precision turning of single-crystal silicon
TL;DR: In this article, the impact of the strain rate during the ultra-precision turning of single-crystal silicon on the anisotropy of surface roughness was analyzed, and it was shown that the uses of a smaller edge radius, faster cutting speeds, and a reduced cutting thickness can result in optimally uniform surface roughs, while the use of a very sharp cutting tool is essential when operating with smaller cutting thickness.
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